Abstract
Diversity in the pathophysiology of breast cancer frustrates therapeutic progress. We need to understand how mechanisms activated by specific combinations of oncogenes, tumor suppressors, and hormonal signaling pathways govern response to therapy and prognosis. A recent series of investigations conducted by Chodosh and colleagues offers new insights into the similarities and differences between specific oncogenic pathways. Expression of three oncogenes relevant to pathways activated in human breast cancers (c-myc, activated neu and Wnt1) were targeted to murine mammary epithelial cells using the same transgenic tetracycline-responsive conditional gene expression system. While the individual transgenic lines demonstrate similarly high rates of tumor penetrance, rates of oncogene-independent tumor maintenance and recurrence following initial regression are significantly different, and are modifiable by mutations in specific cooperating oncogenes or loss of tumor suppressor gene expression. The experiments make three notable contributions. First, they illustrate that rates of tumor regression and recurrence following initial regression are dependent upon the pathways activated by the initiating oncogene. The experiments also demonstrate that altered expression or mutation of specific cooperating oncogenes or tumor suppressor genes results in different rates of tumor regression and recurrence. Finally, they exemplify the power of conditional mouse models for elucidating how specific molecular mechanisms give rise to the complexity of human cancer.
MeSH Terms
Adenocarcinoma/genetics,pathology
Animals
Disease Models, Animal
Female
Gene Expression Regulation, Neoplastic
Mammary Neoplasms, Experimental/genetics,pathology
Mice
Mice, Transgenic
Mutation
Neoplasm Metastasis
Neoplasm Recurrence, Local
Neoplasm Regression, Spontaneous
Proto-Oncogene Proteins/genetics
Receptor, ErbB-2/genetics
Tumor Suppressor Protein p53/genetics
Wnt Proteins
Wnt1 Protein
Zebrafish Proteins
Chemicals
Proto-Oncogene Proteins
Tumor Suppressor Protein p53
Wnt Proteins
Wnt1 Protein
Wnt1 protein, mouse
Zebrafish Proteins
Receptor, ErbB-2
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Tilli Maddalena T
Division of Human Genetics, University of Maryland, Baltimore, USA.
Furth Priscilla A
References (22)
22 references, click to expand
-
Reversibility of acute B-cell leukaemia induced by BCR-ABL1.
Nat Genet. 2000 Jan;24(1):57-60
PMID: 10615128
-
Reversible tumorigenesis by MYC in hematopoietic lineages.
Mol Cell. 1999 Aug;4(2):199-207
PMID: 10488335
-
The matrix metalloproteinase stromelysin-1 acts as a natural mammary tumor promoter.
Oncogene. 2000 Feb 21;19(8):1102-13
PMID: 10713697
-
c-MYC induces mammary tumorigenesis by means of a preferred pathway involving spontaneous Kras2 mutations.
Nat Med. 2001 Feb;7(2):235-9
PMID: 11175856
-
Commentary: is the concept of "tumor promotion" a useful paradigm?
Mol Carcinog. 2001 Mar;30(3):131-7
PMID: 11301473
-
Induction and apoptotic regression of lung adenocarcinomas by regulation of a K-Ras transgene in the presence and absence of tumor suppressor genes.
Genes Dev. 2001 Dec 15;15(24):3249-62
PMID: 11751631
-
A novel doxycycline-inducible system for the transgenic analysis of mammary gland biology.
FASEB J. 2002 Mar;16(3):283-92
PMID: 11874978
-
Suppression of Myc-induced apoptosis in beta cells exposes multiple oncogenic properties of Myc and triggers carcinogenic progression.
Cell. 2002 May 3;109(3):321-34
PMID: 12015982
-
Sustained loss of a neoplastic phenotype by brief inactivation of MYC.
Science. 2002 Jul 5;297(5578):102-4
PMID: 12098700
-
Conditional activation of Neu in the mammary epithelium of transgenic mice results in reversible pulmonary metastasis.
Cancer Cell. 2002 Dec;2(6):451-61
PMID: 12498714
-
Impact of p53 loss on reversal and recurrence of conditional Wnt-induced tumorigenesis.
Genes Dev. 2003 Feb 15;17(4):488-501
PMID: 12600942
-
Number of pregnancies and ovariectomy modify mammary carcinoma development in transgenic HER-2/neu female mice.
Cancer Lett. 2003 Apr 10;193(1):49-55
PMID: 12691823
-
The clonal evolution of tumor cell populations.
Science. 1976 Oct 1;194(4260):23-8
PMID: 959840
-
Molecular themes in oncogenesis.
Cell. 1991 Jan 25;64(2):235-48
PMID: 1988146
-
Facts and theories concerning the mechanisms of carcinogenesis.
FASEB J. 1991 Jun;5(9):2280-6
PMID: 1860619
-
Temporal control of gene expression in transgenic mice by a tetracycline-responsive promoter.
Proc Natl Acad Sci U S A. 1994 Sep 27;91(20):9302-6
PMID: 7937760
-
Conditional transformation of a pancreatic beta-cell line derived from transgenic mice expressing a tetracycline-regulated oncogene.
Proc Natl Acad Sci U S A. 1995 Apr 11;92(8):3576-80
PMID: 7724601
-
Efficacy of tetracycline-controlled gene expression is influenced by cell type: commentary.
Biotechniques. 1995 Aug;19(2):213-6; discussion 216-7
PMID: 8527141
-
Time-sensitive reversal of hyperplasia in transgenic mice expressing SV40 T antigen.
Science. 1996 Sep 6;273(5280):1384-6
PMID: 8703072
-
Doxycycline-mediated quantitative and tissue-specific control of gene expression in transgenic mice.
Proc Natl Acad Sci U S A. 1996 Oct 1;93(20):10933-8
PMID: 8855286
-
Essential role for oncogenic Ras in tumour maintenance.
Nature. 1999 Jul 29;400(6743):468-72
PMID: 10440378
-
The hallmarks of cancer.
Cell. 2000 Jan 7;100(1):57-70
PMID: 10647931